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综放开采散体顶煤放出三维模拟试验台的研制与应用 被引量:9
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作者 张锦旺 潘卫东 +1 位作者 李兆龙 宋正阳 《岩石力学与工程学报》 EI CAS CSCD 北大核心 2015年第S2期3871-3879,共9页
针对以往顶煤放出模拟试验台不能真实模拟顶煤三维放出过程的不足,介绍自主研发的综放开采散体顶煤放出三维模拟试验台,试验台主要由试验箱体、移架与放煤系统、倾角调节与监测系统、标志颗粒制作与安设系统、箱体支座及附属装置组成。... 针对以往顶煤放出模拟试验台不能真实模拟顶煤三维放出过程的不足,介绍自主研发的综放开采散体顶煤放出三维模拟试验台,试验台主要由试验箱体、移架与放煤系统、倾角调节与监测系统、标志颗粒制作与安设系统、箱体支座及附属装置组成。该试验台具有如下功能:(1)三维设计扩展了普通二维试验台在工作面方向的长度,可更加真实地模拟顶煤三维放出过程。(2)通过对综放支架进行细部设计,可模拟开关放煤口和移架过程。(3)利用倾角调节与监测系统,可模拟煤层走向与倾向方向0°~55°范围内任意角度的顶煤三维放出过程。(4)可以在模拟工作面端头损失条件下进行不同煤矸粒径、不同采放比、不同放煤顺序和移架速度的模拟试验。(5)通过在煤层中安设标志颗粒,实现顶煤回收率的测定以及顶煤三维放出体发育过程的反演。利用该试验台进行仰斜综放散体顶煤放出三维模拟试验,揭示了仰采条件下顶煤回收率、顶煤放出体以及煤–岩分界线的特征。试验结果表明,该试验台能够真实地模拟顶煤放出过程,为从三维角度研究综放开采顶煤放出机制提供了新的试验方法和手段。 展开更多
关键词 采矿工程 综放开采 试验台 放出机制 放出 回收率
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Enhanced readout of spin states in double quantum dot
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作者 Baobao Chen Baochuan Wang +3 位作者 Gang Cao Haiou Li Ming Xiao Guoping Guo 《Science Bulletin》 SCIE EI CAS CSCD 2017年第10期712-716,共5页
We investigate a spin-to-charge conversion mechanism which maps the spin singlet and triplet states to two charge states differing by one electron mediated by an intermediate metastable charge state. This mechanism al... We investigate a spin-to-charge conversion mechanism which maps the spin singlet and triplet states to two charge states differing by one electron mediated by an intermediate metastable charge state. This mechanism allows us to observe fringes in the spin-unblocked region beyond the triplet transition line in the measurement of the exchange oscillations between singlet and triplet states in a four-electron dou- ble quantum dot. Moreover, these fringes are amplified and π-phase shifted, compared with those in the spin blockade region. Unlike the signal enhancement mechanism reported before which produces similar effects, this mechanism only requires one dot coupling to the lead, which is a commonly encountered case especially in imperfect devices. Besides, the crucial tunnel rate asymmetry is provided by the dependence on spin state, not by the asymmetric couplings to the leads. We also design a scheme to control the amplification process, which enables us to extract the relevant time parameters. This mechanism will have potential applications in future investigations of spin qubits. 展开更多
关键词 Quantum dotSpin qubits Exchange oscillations Spin-to-charge conversion
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